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Biomedical subjects

K E Morrison

Publications and source records attributed to K E Morrison.

At least 19 recordsLinked to original sources

ALS phenotypes with mutations in CHMP2B (charged multivesicular body protein 2B).

Mutation in the CHMP2B gene has been implicated in frontotemporal dementia. The authors screened CHMP2B in patients with ALS and several cohorts of control samples. They identified mutations (Q206H; I29V) in two patients with non-SOD1 ALS. Neuropathology of the Q206H case showed lower motor neuron predominant disease with ubiquitylated inclusions in motor neurons. Antibodies to p62 (sequestosome 1) showed novel oligodendroglial inclusions in the motor cortex.

Adaptor Proteins, Signal Transducing↗

Association of the H63D polymorphism in the hemochromatosis gene with sporadic ALS.

Iron misregulation promotes oxidative stress and abnormally high iron levels have been found in the spinal cords of patients with ALS. The authors investigated whether HFE gene polymorphisms, linked to hemochromatosis, are associated with ALS using two independent populations of patients with sporadic ALS and controls (totaling 379 patients and 400 controls). They found that the H63D polymorphism is overrepresented in individuals with sporadic ALS (odds ratio 1.85, CI: 1.35 to 2.54).

Adult↗

Confirmation of psaA in all 90 serotypes of Streptococcus pneumoniae by PCR and potential of this assay for identification and diagnosis.

The gene encoding the pneumococcal surface adhesin A (PsaA) protein, psaA, was confirmed in all Streptococcus pneumoniae serotypes by a newly developed PCR (psaA PCR) assay. Eighty-nine of the 90 serotypes amplified produced an 838-bp fragment; the exception was a serotype 16F strain acquired from the American Type Culture Collection (ATCC). Analysis of 20 additional 16F strains from the United States and Brazil showed that the gene was amplified in all 16F strains, implying that the serotype 16F ATCC strain must be a variant. The specificity of the assay was verified by the lack of signal from analysis of heterologous bacterial species (n = 30) and genera (n = 14), including viridans group streptococci. The potential of the assay for clinical application was shown by its ability to detect pneumococci in culture-positive nasopharyngeal specimens. Demonstration of psaA in all 90 serotypes and lack of amplification of heterologous organisms suggest that this assay could be a useful tool for detection of pneumococci and diagnosis of disease.

Adhesins, Bacterial↗

Polymorphisms in the glutamate transporter gene EAAT2 in European ALS patients.

Amyotrophic lateral sclerosis (ALS) is a progressive neurological disorder characterised by degeneration of upper and lower motor neurons. Whilst the primary pathogenic trigger is unknown in most cases, evidence is mounting to implicate a role for glutamate-mediated neurotoxicity in the disorder. Recent studies have shown reduced levels of the mainly astroglial glutamate transporter EAAT2 in ALS motor cortex and spinal cord and multiple abnormal EAAT2 mRNA species in ALS brain tissue. One cause of the low EAAT2 levels may be that point mutations in the EAAT2 gene, EAAT2, result in an abnormal unstable protein. To test this hypothesis we analysed EAAT2 in 128 sporadic and 23 familial European ALS cases. No variants within the coding sequence of EAAT2 to affect the protein sequence nor in the consensus splice sites of the flanking intronic sequences were found in any cases, similar to findings in other reports. Frequent polymorphisms within the flanking intronic sequences of both exons 2 and 4 were seen but at similar frequencies in controls. Mechanisms other than mutations within the coding region of EAAT2 must therefore be responsible for the low levels of EAAT2 seen in most cases of ALS.

Amyotrophic Lateral Sclerosis↗

No evidence of association between apolipoprotein E genotype and phenotypic severity in childhood onset proximal spinal muscular atrophy.

The survival motor neuron (SMN) gene is present in two copies on chromosome 5q13 and the evidence is now compelling that mutations in the telomeric copy (SMNt) of the gene underlie childhood onset proximal spinal muscular atrophy (SMA). There is a correlation between the number of centromeric SMN gene copies (SMNc) and the clinical severity of the disease but this relationship is not absolute. Allelic variants of the apolipoprotein E (APOE) gene encoded on chromosome 19q are known to influence the prognosis and risk in a number of neurological disorders. We have therefore genotyped 166 unrelated cases of SMA to determine whether the presence of specific APOE genotypes correlates with severity of disease. The study failed to show the influence of any particular APOE genotype on disease severity, with specifically APOE epsilon4 being no more common in the milder SMA forms and APOE epsilon2 not over represented in type I SMA. A limited study of 23 SMA families also failed to show any influence of APOE genotype on SMA disease severity. Factors other than APOE genotype must therefore be responsible for determining SMA disease severity.

Apolipoprotein E2↗

Chronic inflammatory demyelinating polyneuropathy presenting with headache and papilledema.

Chronic inflammatory demyelinating polyneuropathy is a disorder typified clinically by motor and sensory neuropathy of at least 2 months' duration and pathologically by multifocal inflammatory demyelination. Its usual presentation is with features reflecting the polyneuropathy, namely limb weakness with hyporeflexia or areflexia and sensory symptoms of glove and stocking distribution. In this report, we detail the course of a 53-year-old man who presented to our neurological service with a severe headache in association with papilledema. The initial diagnosis considered was of possible primary intracranial pathology. Two months later, he developed limb weakness and sensory symptoms typical of chronic inflammatory demyelinating polyneuropathy. His headache, papilledema, and limb symptoms responded to oral corticosteroid therapy, the standard treatment for this type of neuropathy. We hypothesize that his headache and papilledema were due to the elevated cerebrospinal fluid protein level as a result of the polyneuropathy. To our knowledge, this is the first report of headache being a prominent and early symptom of this disorder.

Adrenal Cortex Hormones↗

Functional and compositional changes in pulmonary surfactant in response to exercise.

Pulmonary surfactant from bronchoalveolar lavages was obtained from 2 groups of horses. A control group consisting of 6 healthy racehorses that were paddock-rested and lavaged weekly for 6 consecutive weeks were compared with an experimental group of 10 healthy racehorses, lavaged weekly the same period, consisting of a 5 week incremental-intensity treadmill training programme and one week post training paddock rest. Phospholipid content of lavage fluid was determined indirectly by phosphorus assay, and surfactant functional activity was determined by bubble surfactometry. Total cell counts and differential cell percentages of lavage fluid were adjusted to reflect the dilution of alveolar epithelial lining fluid (ELF) using the lavage/serum urea ratio, and data were analysed per volume of ELF. There was no change in phospholipid content for either group, but some horses had consistently greater amounts than did others, ranging from 17.2-64.4 micrograms/microliter. From the exercised group ELF had both increased nucleated cell numbers due to increased macrophage numbers, and increased numbers of erythrocytes. Surface tension increased significantly over the exercise protocol, but not in controls. Functional activity of surfactant varied between horses, independent of phospholipid content, with average values for individuals ranging 10.5-29.5 mN/m. We conclude that exercise of sufficient intensity to induce intrapulmonary haemorrhage also leads to functional decrease in surfactant activity, without affecting phospholipid content. This study also indicates that functional differences in surfactant exist between horses and may be a risk factor for development of exercise-induced pulmonary haemorrhage.

Animals↗

Copper/zinc superoxide dismutase 1 and sporadic amyotrophic lateral sclerosis: analysis of 155 cases and identification of a novel insertion mutation.

Amyotrophic lateral sclerosis (ALS) is a progressive paralytic disorder resulting from the degeneration of motor neurons in the brain and spinal cord and leading to death within 5 years of symptom onset. The great majority of ALS cases are sporadic, with the familial form (FALS) representing fewer than 10% of all cases. Mutations in the copper/zinc superoxide dismutase 1 (SOD-1) gene have previously been identified as the underlying cause of approximately 20% of FALS cases. As the familial and sporadic forms of the disease are clinically similar, we have sought to determine whether such mutations in SOD-1 underlie any sporadic ALS cases. We have screened 155 sporadic cases by single-strand conformation polymorphism and have identified 4 sporadic cases that possess point mutations in exon 4 of the SOD-1 gene. Two of these mutations are identical to those previously reported in FALS cases. One mutation is novel, resulting in a frameshift at Val118 due to the replacement of G (first base in the last codon of exon 4) by AAAAC. This mutation results in a truncated SOD-1 protein due to the introduction of a stop codon three residues into exon 5.

Alleles↗

Malignant esophageal obstruction and esophagorespiratory fistula: palliation with a polyethylene-covered Z-stent.

PURPOSE: To prospectively evaluate the clinical efficacy of polyethylene-covered metallic Z-stents in treatment of dysphagia secondary to malignant esophageal obstruction and esophagorespiratory fistula. MATERIALS AND METHODS: Thirty-five patients with dysphagia due to malignant esophageal obstruction (n = 32) and esophagorespiratory fistula (n = 3) were treated with polyethylene-covered Gianturco-Rösch Z-stents. RESULTS: Thirty-nine stents were placed in 35 patients. Stent placement was technically successful in all patients. Improvement in dysphagia was achieved in 34 of 35 patients. The average dysphagia score decreased from 3.1 (dysphagia to liquids) to 0.6 (essentially normal diet). An esophagorespiratory fistula was completely sealed in two of three patients. All 35 patients were followed up clinically at 1 day and 1 week and at 3-month intervals (range, 1 week to 18 1/2 months; mean, 4.8 months). Recurrent dysphagia or aspiration occurred in only three of 34 (9%) patients whose disease was initially palliated and was easily treated in all cases. Nine complications occurred in eight patients (23%) and included chest pain that required analgesia (n = 3), food impaction (n = 1), stent migration (n = 2), and upper gastrointestinal tract hemorrhage (n = 3). CONCLUSION: Polyethylene-covered stents are a relatively safe and effective means of long-term palliation in patients with severe malignant esophageal obstruction and esophagorespiratory fistula. These stents are easily deployed, and the rate of stent migration is relatively low.

Aged↗

Novel transcribed sequences represented in the complex genomic region 5q13.

YACs from the complex repetitive human genomic region 5q13, spanning the spinal muscular atrophy (SMA) locus, have been searched for transcribed sequences using the method of End Ligation Coincident Sequence Cloning. Six transcripts (PT1-6) have been identified, three of which (PT4, PT5 and PT6) are novel. Five of these elements hybridise to multiple loci in 5q13, but PT5 is single copy and maps very close to markers that show linkage disequilibrium with SMA.

Base Sequence↗

Analysis of chromosome 5q13 genes in amyotrophic lateral sclerosis: homozygous NAIP deletion in a sporadic case.

Although defects in the gene encoding the enzyme cytosolic copper/zinc superoxide dismutase (SOD1) have been reported in 20% of familial amyotrophic lateral sclerosis (ALS) patients, the etiology of the remaining familial cases and the more common sporadic form of the disease remains unknown. Recently, deletions of the neuronal apoptosis inhibitory protein gene NAIP, of the survival motor neuron gene SMN, and of a further cDNA fragment, XS2G3, have been reported in childhood-onset proximal spinal muscular atrophy (SMA), another disorder with pathology restricted to the motor system. We have therefore investigated the possibility of alterations in SMN and NAIP in 154 patients with ALS (135 sporadic cases, 17 familial cases). None of these patients revealed mutations in SMN by single-strand conformation polymorphism analysis. A single patient revealed a partial deletion of NAIP, with a homozygous absence of NAIP exon 5. While it is possible that this individual is one of the rare carriers of SMA who show NAIP deletions, a further explanation is that the NAIP deletion is in some way contributing to the ALS phenotype in this individual.

Amyotrophic Lateral Sclerosis↗

Human muscle acetylcholine receptor alpha-subunit gene (CHRNA1) association with autoimmune myasthenia gravis in black, mixed-ancestry and Caucasian subjects.

We have sought associations with the muscle acetylcholine receptor alpha-subunit gene (CHRNA1) in autoimmune myasthenia gravis (MG) patients from three ethnic groups; Caucasians and South Africans of Black and Mixed-Ancestry. We found a significant association with the HB*15 CA repeat allele in unrelated Black myasthenics (n = 18; RR = 2.85; pX2 = 0.04) compared with 52 ethnically matched controls. A family-based association study and linkage analysis in Caucasian simplex and multiplex families supported a positive association at this locus with the longer alleles, including HB*14 to *18. However, no significant cosegregation of the disease with the HB alleles could be demonstrated in affected sib pairs. Our results suggest that the CHRNA1 locus harbours a minor susceptibility gene for developing MG, though we cannot rule out linkage disequilibrium with another major gene locus on chromosome 2.

Biomarkers↗

Advances in SMA research: review of gene deletions.

The term spinal muscular atrophy (SMA) is used to encompass a group of inherited disorders in which the striking pathological feature is loss of the cell bodies of alpha motor neurons in the anterior horn cell of the spinal cord and, in some cases, of the bulbar motor nuclei. Although the pathological features of these disorders have been well characterized, the nature of the primary underlying biochemical abnormality remains to be determined. In the 1990s genetic linkage was established for the childhood onset recessive forms of SMA (types I, II and III) to markers mapping to the chromosomal region 5q11.2-13.3. Physical maps of the region were then constructed, several candidate genes isolated and in 1995 deletions in two genes, the survival motor neuron (SMN) gene and the neuronal apoptosis inhibitory protein (NAIP) gene, were identified in significant numbers of patients. Already the impact of the characterization of these deletions is being seen in clinical practice in terms of aiding diagnosis in symptomatic cases and in prenatal diagnosis. As discussed in this review however, several questions remain unresolved. It is unclear whether deletions in one or both of these genes, or indeed in other, as yet unidentified, genes are important in generating the SMA phenotype. The function of the protein product of the SMN gene is unknown. The NAIP gene encodes a protein which inhibits apoptosis in a mammalian cell line: is it disruption of this function which is relevant in SMA? What underlies the variation in disease severity evident both between and within families? Resolution of such issues is of crucial importance if the identification of these deleted gene sequences is to lead to the development of rational therapies for motor neuron diseases.

Chromosome Aberrations↗

Mechanisms in motor neurone disease: clues from genetic studies.

Motor neurone disease is a rapidly progressive neurodegenerative disorder, characterized by muscular weakness and wasting with fasciculation and by spasticity. While most cases are sporadic, approximately 10% are inherited in an autosomal dominant mode. Recently, mutations in the gene encoding the free-radical scavenging enzyme superoxide dismutase-1 have been found to segregate with the disorder in 20% of familial cases. This is an exciting development, as free radical damage has long been implicated in the pathogenesis of motor neurone disease and it raises the possibility of novel therapeutic approaches in this otherwise fatal condition.

Brain↗

Genomic rearrangements in childhood spinal muscular atrophy: linkage disequilibrium with a null allele.

Autosomal recessive childhood onset spinal muscular atrophy has been mapped to chromosome 5q13. We report the analysis of a polymorphic microsatellite which shows linkage disequilibrium with the disease. The linkage disequilibrium is observed with a null allele which is seen as the non-inheritance of alleles from one or both parents. The inheritance of a null allele was observed in 26 out of 36 (72%) informative childhood onset spinal muscular atrophy (SMA) families tested, of all types of severity and from a variety of ethnic backgrounds. In seven families segregating for the severe Werdnig-Hoffmann or SMA type I, no alleles were inherited from either parent using this microsatellite. This null allele may represent a deletion which is either closely associated with, or causes, the disease.

Alleles↗

Cloning the shared components of complex DNA resources.

The complex and repetitive nature of mammalian genomes limits the ability of conventional molecular techniques to recover sequences of interest. Here we describe a rapid and simple procedure for the direct cloning of sequences which are coincident between DNA mixtures of whole genome complexity. The system, called end ligation coincident sequence cloning (EL-CSC), can enrich coincident DNA by greater than 10(6)-fold and overcomes problems associated with repetitive elements. Applying EL-CSC to various paired DNA resources enables the facile cloning of both genomic markers and novel genes. To demonstrate the power of the method we have i) selectively purified single copy sequences from a complete genome, and ii) isolated gene fragments from 260 kb of cloned genomic DNA.

Base Sequence↗